Potential Difference between C-Phase (Two Conductor Open) Solution

STEP 0: Pre-Calculation Summary
Formula Used
Potential Difference between C Phase in TCO = (3*Zero Sequence Potential Difference in TCO)-Potential Difference between B Phase in TCO
Vcc'(tco) = (3*Vaa'0(tco))-Vbb'(tco)
This formula uses 3 Variables
Variables Used
Potential Difference between C Phase in TCO - (Measured in Volt) - Potential Difference Between C Phase in TCO is defined as a difference in the amount of electric potential that a particle has due to its position between two locations in an electric field.
Zero Sequence Potential Difference in TCO - (Measured in Volt) - Zero Sequence Potential Difference in TCO is defined as consisting of balanced three-phase potential differences, phasors of which all have the same phase angles.
Potential Difference between B Phase in TCO - (Measured in Volt) - Potential Difference between B Phase in TCO is defined as a difference in the amount of electric potential that a particle has due to its position between two locations in an electric field.
STEP 1: Convert Input(s) to Base Unit
Zero Sequence Potential Difference in TCO: 3.66 Volt --> 3.66 Volt No Conversion Required
Potential Difference between B Phase in TCO: 8.1 Volt --> 8.1 Volt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vcc'(tco) = (3*Vaa'0(tco))-Vbb'(tco) --> (3*3.66)-8.1
Evaluating ... ...
Vcc'(tco) = 2.88
STEP 3: Convert Result to Output's Unit
2.88 Volt --> No Conversion Required
FINAL ANSWER
2.88 Volt <-- Potential Difference between C Phase in TCO
(Calculation completed in 00.004 seconds)

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Vishwakarma Government Engineering College (VGEC), Ahmedabad
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Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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Two Conductor Open Calculators

A-Phase EMF using Positive Sequence Current (Two Conductor Open)
​ LaTeX ​ Go A Phase EMF in TCO = Positive Sequence Current in TCO*(Positive Sequence Impedance in TCO+Negative Sequence Impedance in TCO+Zero Sequence Impedance in TCO)
A-Phase Voltage using Sequence Voltages (Two Conductor Open)
​ LaTeX ​ Go A Phase Voltage in TCO = Positive Sequence Voltage in TCO+Negative Sequence Voltage in TCO+Zero Sequence Voltage in TCO
A-Phase Current (Two Conductor Open)
​ LaTeX ​ Go A-Phase Current in TCO = Positive Sequence Current in TCO+Negative Sequence Current in TCO+Zero Sequence Current in TCO
Potential Difference between C-Phase (Two Conductor Open)
​ LaTeX ​ Go Potential Difference between C Phase in TCO = (3*Zero Sequence Potential Difference in TCO)-Potential Difference between B Phase in TCO

Potential Difference between C-Phase (Two Conductor Open) Formula

​LaTeX ​Go
Potential Difference between C Phase in TCO = (3*Zero Sequence Potential Difference in TCO)-Potential Difference between B Phase in TCO
Vcc'(tco) = (3*Vaa'0(tco))-Vbb'(tco)

What is two conductor open fault?

When two phases of a balanced three-phase line open it creates an unbalance in the system and results in the flow of unbalanced currents. Such conditions occur in the system when two conductors of a transmission line are broken due to storms or if fuses, isolators, or circuit breakers operate only on one or two phases leaving others connected.

How to Calculate Potential Difference between C-Phase (Two Conductor Open)?

Potential Difference between C-Phase (Two Conductor Open) calculator uses Potential Difference between C Phase in TCO = (3*Zero Sequence Potential Difference in TCO)-Potential Difference between B Phase in TCO to calculate the Potential Difference between C Phase in TCO, The Potential Difference between C-phase (Two conductor open) formula is defined as a difference in the amount of electric potential that a particle has due to its position between two locations in an electric field. Potential Difference between C Phase in TCO is denoted by Vcc'(tco) symbol.

How to calculate Potential Difference between C-Phase (Two Conductor Open) using this online calculator? To use this online calculator for Potential Difference between C-Phase (Two Conductor Open), enter Zero Sequence Potential Difference in TCO (Vaa'0(tco)) & Potential Difference between B Phase in TCO (Vbb'(tco)) and hit the calculate button. Here is how the Potential Difference between C-Phase (Two Conductor Open) calculation can be explained with given input values -> 2.89 = (3*3.66)-8.1.

FAQ

What is Potential Difference between C-Phase (Two Conductor Open)?
The Potential Difference between C-phase (Two conductor open) formula is defined as a difference in the amount of electric potential that a particle has due to its position between two locations in an electric field and is represented as Vcc'(tco) = (3*Vaa'0(tco))-Vbb'(tco) or Potential Difference between C Phase in TCO = (3*Zero Sequence Potential Difference in TCO)-Potential Difference between B Phase in TCO. Zero Sequence Potential Difference in TCO is defined as consisting of balanced three-phase potential differences, phasors of which all have the same phase angles & Potential Difference between B Phase in TCO is defined as a difference in the amount of electric potential that a particle has due to its position between two locations in an electric field.
How to calculate Potential Difference between C-Phase (Two Conductor Open)?
The Potential Difference between C-phase (Two conductor open) formula is defined as a difference in the amount of electric potential that a particle has due to its position between two locations in an electric field is calculated using Potential Difference between C Phase in TCO = (3*Zero Sequence Potential Difference in TCO)-Potential Difference between B Phase in TCO. To calculate Potential Difference between C-Phase (Two Conductor Open), you need Zero Sequence Potential Difference in TCO (Vaa'0(tco)) & Potential Difference between B Phase in TCO (Vbb'(tco)). With our tool, you need to enter the respective value for Zero Sequence Potential Difference in TCO & Potential Difference between B Phase in TCO and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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